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1.
Charge Density Wave and the Analysis on Grüner s Equation;
电荷密度波与Grüner方程的向量场分析
2.
THE LOW FREQUENCY PINNING OF CDW IN W DOPED THALLIUM BLUE BRONZE Tl 0.3 Mo 0.99 W 0.01 O 3
钨掺杂铊蓝青铜中电荷密度波的低频钉扎
3.
Low-Temperature Electronic Transport Property of Quasi-One-Dimensional Charge-Density-Wave Conductor Rb_(0.3)MoO_3;
准一维电荷密度波导体Rb_(0.3)MoO_3的低温电输运性质
4.
By the charge density we mean the per unit volume.
所谓的电荷密度是指单位体积的电荷。
5.
They measured the strength of electrical charges moving in waves from the brain.
它们可以测量脑电波的电荷强度。
6.
Partial Discharge Measuring Based on Change of the Charge Density in Oil;
基于油中电荷密度变化的局部放电测量
7.
ζ Potentials and Pore Surface Charge Densities of the Porous Polymer Membranes (PMP-013MF Membrane);
高分子MF膜的微孔表面ζ电位和电荷密度
8.
Probability Density Function of Voltage Sag Sensitivity and Its Application
敏感负荷电压凹陷敏感度概率密度函数及应用
9.
220/20kV power supply scheme in high load density urban areas
城市高负荷密度地区220/20kV供电方案研究
10.
Density Functional Theory on the Charged Hard-sphere Fluid Confined in Parallel Plates
平行硬壁间荷电硬球流体的密度泛函理论研究
11.
Their antistatic performances were determined using methods of electrification voltage by friction and surface density of charge.
采用摩擦起电电压法和电荷面密度法,对其进行了抗静电性能测试。
12.
Ultrasonic welding of integrated circuits is of highest accurate.
超声波焊接的集成电路,精密度极高。
13.
Study of Charged Particle Rapidity Density and Charge Fluctuations as a Signature of QGP Formation;
带电粒子快度密度与电荷起伏作为QGP信号的研究
14.
Discussion of the Wall Current Contribution in the Rectangular Waveguide under TE_(10) Mode
矩形波导中TE_(10)波面壁电流密度分布讨论
15.
Research of Low Harmonic Power in High Power-density Electric-drive System;
高功率密度电驱动系统低谐波电源技术研究
16.
It was concluded that: ① the charge density decreases steadily from the end near the frontal electrode to the bomb tail;
其结论是 :弹体电荷密度自靠近前电极的一端至弹尾逐步衰减 ;
17.
Study on Preparation of Cationic/Amphoteric Polyelctrotyles with High Charge Density by Hofmann Reaction;
Hofmann反应法制备高电荷密度阳离子型/两性型聚电解质的研究
18.
The relation between the surface charge density of a charged ellipsoidal conductor and its principal radii
带电导体椭球的面电荷密度与主曲率半径的关系